...
首页> 外文期刊>Meteoritics & planetary science >Magma ocean fractional crystallization and cumulate overturn in terrestrial planets: Implications for Mars
【24h】

Magma ocean fractional crystallization and cumulate overturn in terrestrial planets: Implications for Mars

机译:岩浆海洋部分结晶和地球行星累积翻转:对火星的影响

获取原文
获取原文并翻译 | 示例

摘要

Crystallization of a magma ocean on a large terrestrial planet that is significantly melted by the energy of accretion may lead to an unstable cumulate density stratification, which may overturn to a stable configuration. Overturn of the initially unstable stratification may produce an early basaltic crust and differentiated mantle reservoirs. Such a stable compositional stratification can have important implications for the planet's subsequent evolution by delaying or suppressing thermal convection and by influencing the distribution of radiogenic heal sources. We use simple models for fractional crystallization of a martian magma ocean, and calculate the densities of the resulting cumulates. While the simple models presented do not include all relevant physical processes, they are able to describe to first order a number of aspects of martian evolution. The models describe the creation of magma source regions that differentiated early in the history of Mars, and present the possibility of an early, brief magnetic Held initiated by cold overturned cumulates falling to the core-mantle boundary. In a model that includes the density inversion at about 7.5 GPa, where olivine and pyroxene float in the remaining magma ocean liquids while garnet sinks, cumulate overturn sequesters alumina in the deep martian interior. The ages and compositions of source regions are consistent with SNC meteorite data.
机译:大型地球行星上的岩浆海洋的结晶会因吸收积聚的能量而大大融化,从而可能导致不稳定的累积密度分层,从而可能翻转为稳定的构造。最初不稳定的分层的倾覆可能产生早期的玄武岩地壳和分化的地幔储层。通过延迟或抑制热对流并影响放射源愈合源的分布,这种稳定的成分分层可能对行星的后续演化具有重要意义。我们使用简单的模型对火星岩浆海洋进行分级结晶,并计算所得堆积物的密度。尽管给出的简单模型并不包括所有相关的物理过程,但它们能够一阶描述火星演化的许多方面。这些模型描述了在火星历史早期分化的岩浆源区域的形成,并提出了由冷倾覆的堆积物落到岩心—地幔边界而引起的早期短暂磁场的可能性。在一个包括大约7.5 GPa密度反演的模型中,橄榄石和辉石漂浮在剩余的岩浆海洋液体中,而石榴石下沉时,则将深火星内部的氧化铝堆积起来。源区的年龄和组成与SNC陨石数据一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号